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荷斯坦-弗里生奶牛黄体活动开始与产犊间隔、体况评分、生产性能及线性体型性状之间的遗传关系。

The genetic relationship between commencement of luteal activity and calving interval, body condition score, production, and linear type traits in Holstein-Friesian dairy cattle.

作者信息

Royal M D, Pryce J E, Woolliams J A, Flint A P F

机构信息

Division of Animal Physiology, School of Biosciences, University of Nottingham, Sutton Bonington Campus, Leics, LE12 5RD, United Kingdom.

出版信息

J Dairy Sci. 2002 Nov;85(11):3071-80. doi: 10.3168/jds.S0022-0302(02)74394-4.

Abstract

The decline of fertility in the UK dairy herd and the unfavorable genetic correlation (r(a)) between fertility and milk yield has necessitated the broadening of breeding goals to include fertility. The coefficient of genetic variation present in fertility is of similar magnitude to that present in production traits; however, traditional measurements of fertility (such as calving interval, days open, nonreturn rate) have low heritability (h2 < 0.05), and recording is often poor, hindering identification of genetically superior animals. An alternative approach is to use endocrine measurements of fertility such as interval to commencement of luteal activity postpartum (CLA), which has a higher h2 (0.16 to 0.23) and is free from management bias. Although CLA has favorable phenotypic correlations with traditional measures of fertility, if it is to be used in a selection index, the genetic correlation (ra) of this trait with fertility and other components of the index must be estimated. The aim of the analyses reported here was to obtain information on the ra between lnCLA and calving interval (CI), average body condition score (BCS; one to nine, an indicator of energy balance estimated from records taken at different months of lactation), production and a number of linear type traits. Genetic models were fitted using ASREML, and r(a) were inferred from genetic regression of lnCLA on sire-predicted transmitting abilities (PTA) for the trait concerned by multiplying the regression coefficient (b) by the ratio of the genetic standard deviations. The inferred r(a) between lnCLA and CI and average BCS were 0.36 and -0.84, respectively. Genetic correlations between InCLA and milk fat and protein yields were all positive and ranged between 0.33 and 0.69. Genetic correlations between InCLA and linear type traits reflecting body structure ranged from -0.25 to 0.15, and between udder characteristics they ranged from -0.16 to 0.05. Thus, incorporation of endocrine parameters of fertility, such as CIA, into a fertility index may offer the potential to improve the accuracy of breeding value prediction for fertility, thus allowing producers to make more informed selection decisions.

摘要

英国奶牛群繁殖力的下降以及繁殖力与产奶量之间不利的遗传相关性(r(a))使得有必要拓宽育种目标以纳入繁殖力。繁殖力中存在的遗传变异系数与生产性状中的遗传变异系数大小相似;然而,传统的繁殖力测量指标(如产犊间隔、空怀天数、返情率)遗传力较低(h2 < 0.05),且记录往往不佳,这阻碍了对遗传上更优秀动物的识别。另一种方法是使用繁殖力的内分泌测量指标,如产后黄体活动开始间隔(CLA),其遗传力较高(0.16至0.23)且不受管理偏差影响。尽管CLA与传统繁殖力测量指标具有良好的表型相关性,但如果要将其用于选择指数,就必须估计该性状与繁殖力及指数其他组成部分的遗传相关性(ra)。此处报告的分析目的是获取关于lnCLA与产犊间隔(CI)、平均体况评分(BCS;1至9分,根据泌乳不同月份记录估算的能量平衡指标)、产量以及一些线性体型性状之间ra的信息。使用ASREML拟合遗传模型,并通过将回归系数(b)乘以遗传标准差的比率,从lnCLA对相关性状的父本预测传递能力(PTA)的遗传回归中推断ra。lnCLA与CI以及平均BCS之间推断的ra分别为0.36和 -0.84。InCLA与乳脂和乳蛋白产量之间的遗传相关性均为正,范围在0.33至0.69之间。InCLA与反映身体结构的线性体型性状之间的遗传相关性范围为 -0.25至0.15,与乳房特征之间的遗传相关性范围为 -0.16至0.05。因此,将繁殖力的内分泌参数(如CIA)纳入繁殖力指数可能有潜力提高繁殖力育种值预测的准确性,从而使生产者能够做出更明智的选择决策。

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